论文标题

认知RF-FSO FRONTHAUL分配在不含细胞和以用户为中心的MMIMO网络中

Cognitive RF-FSO Fronthaul Assignment in Cell-Free and User-Centric mMIMO Networks

论文作者

Agheli, Pouya, Emadi, Mohammad Javad, Beyranvand, Hamzeh

论文摘要

无单元的大型MIMO(CF-MIMO)网络及其以用户为中心(UC)版本被认为是下一代无线网络的有前途技术。但是,在这些网络中,领先和回程任务是具有挑战性的问题。在本文中,研究了CF-和UC-MMIMO网络的上行链路传输的能源效率,其中通过射频(RF)和/或自由空间(RF)和/或自由空间(FSO)Fronthauls连接到访问点(APS)与聚合节点(ANS)连接到Fiber Backha。可实现的数据速率是通过考虑到APS和ANS,FSO对齐和天气条件的硬件非理想性的影响来得出的。为了建立一个强大而节能的网络,尤其是在FSO未对准和不利天气条件的情况下,首先,提出了认知RF-FSO FRONTHAUL分配算法,以共享可用的RF带宽和Fronthaul链接之间的可用RF带宽。然后,研究了用户和AP的最佳功率分配,并提出了两种分析方法来解决非凸优化问题。通过数值结果,我们讨论了与仅使用RF和FSO FRONTHAUL链接相比,使用认知RF-FSO FRONTHAUL分配如何实现更高的能量效率,例如,在不利条件下,可实现高达$ 198 \%的能源效率。此外,讨论了FSO未对准,天气条件和功率分配对CF-和UC-MMIMO网络性能的影响。

Cell-free massive MIMO (CF-mMIMO) network and its user-centric (UC) version are considered as promising techniques for the next generations of wireless networks. However, fronthaul and backhaul assignments are challenging issues in these networks. In this paper, energy efficiencies of uplink transmission for the CF- and UC-mMIMO networks are studied, wherein access points (APs) are connected to aggregation nodes (ANs) through radio frequency (RF) and/or free-space optic (FSO) fronthauls, and the ANs are connected to a central processing unit via fiber backhauls. The achievable data rates are derived by taking into account the effects of hardware non-ideality at the APs and ANs, FSO alignment and weather conditions. To have a robust and energy-efficient network, especially in the presence of FSO misalignment and adverse weather conditions, firstly, a cognitive RF--FSO fronthaul assignment algorithm is proposed at the cost of sharing the available RF bandwidth between the access and fronthaul links. Then, optimal power allocations at the users and APs are investigated, and two analytical approaches are proposed to solve the non-convex optimization problem. Through numerical results, we have discussed how utilizing the cognitive RF--FSO fronthaul assignment achieves higher energy efficiency compared to that of FSO-only, RF-only, or simultaneously using RF and FSO fronthaul links, e.g., achieving up to $198\%$ higher energy efficiency under unfavorable conditions. Moreover, the effects of FSO misalignment, weather conditions, and power allocations on the performances of the CF- and UC-mMIMO networks are discussed.

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